Resolving primary membranous glomerulopathy (MGN) reveals a dynamically metabolic pathway from sub-epithelium to

Yazan A Al-Othman1, Olaf Kroneman2, Sandeep Kumar1

  • 1Department of Pathology, Beaumont Laboratories, Beaumont Health, Royal Oak, MI, USA.

Ultrastructural Pathology
|February 3, 2022
PubMed

Insights

Immunostaining for IgG4 is a reliable indicator for primary membranous glomerulopathy (MGN). Unique PLA2R+/IgG4- staining patterns in MGN correlate with resolving intramembranous deposits, suggesting ongoing podocyte activity.

Area of Science:

  • Nephrology
  • Immunopathology
  • Glomerular Diseases

Background:

  • Idiopathic membranous glomerulopathy (MGN) exhibits unique deposit transitions from subepithelial to intramembranous stages.
  • This deposit resolution phenomenon is not observed in other immune complex glomerulonephritides.
  • Understanding the immunostaining patterns associated with these resolving features is crucial for accurate diagnosis.

Purpose of the Study:

  • To investigate unique immunostaining patterns in primary MGNs with intramembranous resolving features.
  • To determine the diagnostic utility of PLA2R and IgG4 immunostains in differentiating primary MGN.
  • To correlate immunostaining findings with the stage of disease progression in MGN.

Main Methods:

  • Retrospective analysis of 50 primary MGN and 39 secondary MGN cases.
  • Immunohistochemical staining for Phospholipase A2 Receptor (PLA2R) and Immunoglobulin G4 (IgG4) on paraffin-embedded kidney biopsies.
  • Electron microscopy evaluation for cases with resolving intramembranous features.

Main Results:

  • 84% of primary MGN cases showed diffuse IgG4 positivity, often co-localized with PLA2R.
  • A subset of primary MGN cases (PLA2R+/IgG4-) exhibited resolving intramembranous features.
  • Secondary MGN cases were predominantly negative for both IgG4 and PLA2R, with one exception.

Conclusions:

  • IgG4 immunostaining is a highly reliable marker for diagnosing primary MGN.
  • The PLA2R+/IgG4- staining pattern is associated with intramembranous resolving features in primary MGN.
  • These findings suggest a dynamic metabolic process within the glomerulus during MGN progression.

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